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Characterization and Application of a Newly Isolated Pyrene-degrading Bacterium,

Overview
Journal 3 Biotech
Publisher Springer
Specialty Biotechnology
Date 2017 Sep 29
PMID 28955606
Citations 3
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Abstract

PL5 (PL5) was newly isolated from soil sample and was identified by 16S rDNA sequence analysis. The strain PL5 had a high potential to degrade pyrene (PYR) in both liquid solution and soil and was able to degrade 51.8% of PYR at 25 °C and pH 7.0 condition within 10 days. At 25 °C, the ability of strain PL5 to degrade PYR at different pH values followed the following order pH 6.0 > pH 7.0 > pH 8.0 > pH 9.0. Degradation of total PYR was 56.5 and 51.8% after 10 days at pH 6.0 and 7.0 with PYR half-lives of 8.8 and 9.2 days, respectively. The ability of strain PL5 degraded PYR under different temperatures was 35 > 25 > 15 °C at pH 6.0. Among the tested soils contaminated by PYR, the best degradation of PYR by strain PL5 occurred in paddy soil where the degradation was 57.5% after 10 days, and the half-life of PYR was reduced 19-fold in the presence of strain PL5. This study suggested that PL5 could be used for the bioremediation of the contaminated soil and water through the degradation of PYR.

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References
1.
Kumar V, Maitra S . Biodegradation of endocrine disruptor dibutyl phthalate (DBP) by a newly isolated Methylobacillus sp. V29b and the DBP degradation pathway. 3 Biotech. 2017; 6(2):200. PMC: 5031561. DOI: 10.1007/s13205-016-0524-5. View

2.
Zafra G, Moreno-Montano A, Absalon A, Cortes-Espinosa D . Degradation of polycyclic aromatic hydrocarbons in soil by a tolerant strain of Trichoderma asperellum. Environ Sci Pollut Res Int. 2014; 22(2):1034-42. DOI: 10.1007/s11356-014-3357-y. View

3.
Chen M, Xu P, Zeng G, Yang C, Huang D, Zhang J . Bioremediation of soils contaminated with polycyclic aromatic hydrocarbons, petroleum, pesticides, chlorophenols and heavy metals by composting: Applications, microbes and future research needs. Biotechnol Adv. 2015; 33(6 Pt 1):745-55. DOI: 10.1016/j.biotechadv.2015.05.003. View

4.
Shahsavari E, Adetutu E, Anderson P, Ball A . Plant residues--a low cost, effective bioremediation treatment for petrogenic hydrocarbon-contaminated soil. Sci Total Environ. 2012; 443:766-74. DOI: 10.1016/j.scitotenv.2012.11.029. View

5.
Kastner M, Mahro B . Impact of inoculation protocols, salinity, and pH on the degradation of polycyclic aromatic hydrocarbons (PAHs) and survival of PAH-degrading bacteria introduced into soil. Appl Environ Microbiol. 1998; 64(1):359-62. PMC: 124719. DOI: 10.1128/AEM.64.1.359-362.1998. View